Literature DB >> 21742981

Quantifying the sequence-function relation in gene silencing by bacterial small RNAs.

Yue Hao1, Zhongge J Zhang, David W Erickson, Min Huang, Yingwu Huang, Junbai Li, Terence Hwa, Hualin Shi.   

Abstract

Sequence-function relations for small RNA (sRNA)-mediated gene silencing were quantified for the sRNA RyhB and some of its mRNA targets in Escherichia coli. Numerous mutants of RyhB and its targets were generated and their in vivo functions characterized at various levels of target and RyhB expression. Although a core complementary region is required for repression by RyhB, variations in the complementary sequences of the core region gave rise to a continuum of repression strengths, correlated exponentially with the computed free energy of RyhB-target duplex formation. Moreover, sequence variations in the linker region known to interact with the RNA chaperone Hfq also gave rise to a continuum of repression strengths, correlated exponentially with the computed energy cost of keeping the linker region open. These results support the applicability of the thermodynamic model in predicting sRNA-mRNA interaction and suggest that sequences at these locations may be used to fine-tune the degree of repression. Surprisingly, a truncated RyhB without the Hfq-binding region is found to repress multiple targets of the wild-type RyhB effectively, both in the presence and absence of Hfq, even though the former is required for the activity of wild-type RyhB itself. These findings challenge the commonly accepted model concerning the function of Hfq in gene silencing-both in providing stability to the sRNAs and in catalyzing the target mRNAs to take on active conformations-and raise the intriguing question of why many endogenous sRNAs subject their functions to Hfq-dependences.

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Year:  2011        PMID: 21742981      PMCID: PMC3145688          DOI: 10.1073/pnas.1100432108

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  49 in total

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6.  Base-pairing requirement for RNA silencing by a bacterial small RNA and acceleration of duplex formation by Hfq.

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  29 in total

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3.  Exploring the Dynamics and Mutational Landscape of Riboregulation with a Minimal Synthetic Circuit in Living Cells.

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4.  Comparative genomics boosts target prediction for bacterial small RNAs.

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5.  Large-scale mapping of sequence-function relations in small regulatory RNAs reveals plasticity and modularity.

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7.  The ancestral SgrS RNA discriminates horizontally acquired Salmonella mRNAs through a single G-U wobble pair.

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Review 8.  Regulatory RNAs: charming gene management styles for synthetic biology applications.

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Review 9.  Regulation by small RNAs in bacteria: expanding frontiers.

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